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00:25 Mhm. Okay folks, welcome Hope you had somewhere to break last

00:36 . Um um So uh as you guess from if you flip through what

00:44 got left, we don't have a to do today so um I'm guessing

00:50 probably done here in about 30 minutes so. And then uh that will

00:56 in the unit to. Okay so so of course remember you have the

01:02 at the end of the week? What else? So we do have

01:08 blackboard quiz um Do on sunday. will open on thursday that will

01:14 So we're gonna start three on Wednesday chapter 21 22. Again uh just

01:23 small portion of that's like one small bit of 21 and then a little

01:29 of 22 That covers this kind of extension of really metabolism 14 with a

01:37 kind of settlement, nitrogen cycle there couple other things. Um But I'm

01:43 sure we'll be able to finish that in Wednesday's lecture. Okay And then

01:50 go on to other things. Like rest of the material in three is

01:55 of like I guess I called bacterial . So we'll look at that

02:02 And then uh that will take us mid april. And then um then

02:08 end with like medical aspects of medical uniform. So Um there's no smart

02:17 assignments due this week. You don't to worry about that so but there

02:20 that quiz. The quiz is only to be you know a few questions

02:22 four or five questions. But um before then we have to finish up

02:29 rest of 14 which basically just is we're in the photo trophy. So

02:35 started it last time and I have couple of things up here just to

02:41 this and it's been a while. uh so again, we're the last

02:47 of 14 we're talking about here is Kofi Okay. Using light energy to

02:54 metabolism, so to speak. And we look we're looking at we looked

03:00 this process down here, the very one, the non chlorophyll based so

03:07 can have chlorophyll based and non chlorophyll um Photo trophy. Okay, your

03:14 is likely with the sort of with chlorophyll based. How plans allergy santa

03:21 , how they photosynthesize disease skiing, you recall that term. Um but

03:28 started with this uh process here, is a non chlorophyll based, so

03:34 different. Okay, but just to of summarize a couple of things

03:38 So we're talking about photo trophy, course we're looking we're involving a some

03:42 of light absorbing molecules. Right? call these things photo pigments and they're

03:50 with proteins, another accessory pigments to these light absorbing um complexes. Uh

03:59 of course a membrane right, because do have the proton pump being generated

04:07 so membranes essential or that we also that membrane full of these uh photo

04:14 or photo systems are sometimes called into membrane to maximize light absorption. Um

04:22 also have some kind of mechanism to that light energy into into into chemical

04:28 . So in A D. H A. T. P.

04:31 . Right? And for me that these groups your photo water trophy.

04:37 they fixed the 02. So that because a lot of energy and it

04:42 from the energy produced by the light . So if you recall the light

04:48 reactions um that's what we're talking about and that the light independent those are

04:54 ones involved in seO two fixation. . But we're not really gonna get

04:58 co two fixation. The mechanism of . We're just going to stay focused

05:03 the what? A light dependent Okay so uh so just to again

05:10 so just before we talk about that full tosses reactions. So remember whereas

05:15 three things are generally parts of any of photo trophy. Okay. Photo

05:21 may not be okay. And so saw that was the case in um

05:27 the non chlorophyll based system. The adoption retinal system. Okay so we

05:34 this in uh halo archaea as well bacteria. So there's both the bacterial

05:45 option which we've seen Archaea protium adoption similar bacterial types and both have this

05:54 comments. So we had this protein and this molecule right now that is

06:01 light absorbing portion. Okay so the now molecules tightly down here and light

06:12 absorption of photons of light by the bond here. All right. Um

06:18 of the twist to change shape. and because it's greatly bound in the

06:24 , if the retinal flips are on they will bond and change shape.

06:28 too does the protein changes shape as . And that shape changes accompanied by

06:35 pumping of protons. Okay, so what so it's basically a light driven

06:40 pump. That's what it is. a couple of features absorbs green

06:47 Right? So it reflects blues and . And when you combine blue red

06:51 makes purple. So there you see where this formula is growing.

06:55 looks like a purplish mass of Okay. Um the uh other

07:03 So the other thing basically is there's photosynthesis records some of the reactions

07:10 Right? So here's the strictly absorption photons of light. There's no electron

07:15 really going on here. Right, absorption of photons of life.

07:20 And that's what causes the change And the and the pumping of

07:26 Um the uh and so, the other thing, of course these

07:31 photos autotrophs that do this. So remember this term hetero trophy is

07:37 operative term. Yes, photo absorbs . Okay, uses light to make

07:42 but it still needs a an more organic source of carbon. They

07:47 not they don't fix don't fix the . They have to have something organic

07:54 to metabolize chat. Um uh So we're going to talk about the rest

08:01 the time today are really these chlorophyll systems. Okay. Um any questions

08:10 this so far? Okay. So let's look at um your corporate

08:17 systems. And so like I your familiarity is likely with this

08:21 Okay, so your allergies, bacteria and plans. Right. So

08:26 carry out the oxygen in criticism. accounts for, you know, most

08:31 the ceo to fix in the Okay. Um oceans. Right.

08:37 sort of the oceans and the allergy sinus bacteria that are present in the

08:41 um and the mass, you obviously the the amount of oceans on

08:46 earth. Right. And the amount photosynthesis that occurs as a result.

08:51 of course, um for the census the equator, right? That's where

08:57 light absorption is maximal maximal uh energy hitting around the equator. Okay.

09:04 so that of course your tropical jungles things like that have lots of photosynthesis

09:08 on. Okay. And this type photosynthesis primarily. Okay. And so

09:15 call and oxygen IQ for the census the process produces oxygen. Right?

09:21 all a part of that photosynthesis reaction feeds the system electron. Right?

09:27 chlorophyll um like any of your pigment are gonna fit into a membrane.

09:35 , there's gonna be a hydrophobic portion it. Right? So this non

09:41 portion will stick into a membrane. . And and then allowed to fill

09:47 that membrane with all these different photo . And so the light absorbing part

09:51 chroma for it's called you see there these these he marine um aromatic in

09:59 . Uh central metal atom is sitting magnesium you see there and these are

10:05 to um unlike the previous system we about. Yeah wow this system of

10:13 will involve transfers of electrons. so really in a nutshell is about

10:19 life that light energy will be used knock electrons to higher energy some states

10:25 china and then create a electron Okay, so the arrangement of these

10:34 , so we'll have a mixture of fields and proteins, accessory pigments that

10:41 of um expand the range of light can be absorbed. Okay, chlorophylls

10:48 in like the blue and red Okay, so accessory pigments will kind

10:52 expand that somewhat. And so they'll them in these uh antenna complexes,

10:59 like they now gets to like a dish. Maybe there's a way to

11:03 about it. And so photons of are absorbed and that energy can be

11:11 from complex to complex basically to a center which is in the middle

11:16 Okay. And this is what's holding pair of electrons that then once let

11:21 red quick amount of energy is Then those are knocked out. Okay

11:26 that's where they were then transferred to series of electronic transfer components. Um

11:32 in terms of again mentioning that they stuff these these things into membranes to

11:38 the density and and lots of light . The membrane itself will fold extensively

11:46 these what we call Thailand chords. . So we use this term in

11:50 context of bacteria, microbes, cyanobacteria others. It's it's not an organ

11:57 it's not an organ L we're not about chloroplasts here. Okay. But

12:01 do refer to the folded membranes of bacterial type that can do this as

12:07 bible codes because they contain these photo . Okay. Um and of course

12:14 a sightedness because again many of these being used to pump protons out.

12:18 , so it will be a charge in a in a concentration. Um

12:27 so the first system we'll look at is not quite almost like so here's

12:32 an absorption spectrum. Okay, absorption a range of wavelengths. Okay.

12:40 so the chlorophyll uh blues and reds kind of are the peaks particularly blue

12:47 . Um so by absorbing the blue red light, you Perfect green.

12:52 , fair degree. And so um chlorophylls. Okay, so chlorophylls,

12:59 we see in allergy plants santa bacteria chlorophylls are what we see in these

13:06 bacterial photo probes um that have a system but not the complete system that

13:15 algae in santa bacteria have. so so there's gonna be some difference

13:20 that absorption. And so what we here is bacterial chlorophyll particularly absorbs light

13:25 the low end. Okay. Low meaning uh low energy. Okay,

13:31 remember as wavelength increases energy decreases, ? So wavelength that is short and

13:39 the left is more high energy So um so really in uh when

13:47 look at say an aquatic system. um your your oxygen IQ for the

13:56 . A global light in the more energy range blues typically, and they

14:01 be higher in the water column. , further depth there'll be more there'll

14:05 more on top. Okay, because light hits water of course gets refracted

14:10 loses energy. So those those types oxygen synthesizing appeared will be on the

14:18 layers of the water column below So energies. And so they absorb

14:24 energy. Higher energy type. And lower one energy light trickles down right

14:30 electrically below your your oxygen and photo . And in fact many of them

14:36 also in the sediment, the lowest depths. Okay, how are they

14:41 this lower energy light. And so so we'll look first at uh the

14:49 IQ system. Okay, so plants but um cyanobacteria and algae.

14:56 , so they have the complete um system sort of system one and

15:02 Okay, so Here is uh so in the order of 2-1. Because

15:09 the order of worship of discovery that resistant to contain the is linked to

15:15 ATP formation. Okay, so the phosphor relation. So light hits Photo

15:23 two complexes That energy absorption leads to a release of electrons. So basically

15:31 system to becomes oxidized gives up Right? So if you then have

15:39 then keep again, it's all about we learned previously. Keeping electrons flow

15:44 right. So we have to have source, right source of electrons feeding

15:48 . Okay, so that's where the tosses reaction comes in. Okay,

15:53 water serves as a source of electrons this system. So when this solar

16:00 too folks like loses electrons, it a very powerful oxidizing agent.

16:07 very powerful Oxidizing oxidizing agent wants to reduced. Right? So as it

16:14 electrons and then we'll grab so to electrons from water. Okay. And

16:20 the water's oxidized two oxygen. And hence this is the oxygen

16:27 This is why we call it that is evolved. And the electrons have

16:31 passed on the rotor system to so this is kind of so as

16:35 hits it again, those electrons takes from water like this is kind of

16:39 feeds the source here, source feeding process, but it's driven by

16:46 Okay. Hence for Okay. Uh then very similarly to what we talked

16:53 before in the context of for Okay, electrons are passed down to

17:01 carriers and again, it's the same of of more positive reduction potential.

17:07 ? That's what keeps the flow going that's coupled to the proton pumping.

17:13 . Although not shown here. There's to be an HTTPS which will be

17:18 somewhere like this. Okay. And where HTTP formation will occur as they

17:25 through the gps. So the this is the same mechanism we talked

17:32 before. Keamy osmosis mechanism, proton , etcetera. Okay. It's just

17:37 light is the driving force here. . Yeah, that's one way to

17:45 about. Yeah. Mhm. Completely . Yeah, there's no similarity

17:54 There's really no similarity in terms of the components are not the same at

18:01 . But the the process of how works is the same. Um so

18:11 electrons of course, without losing energy they are being passed from one to

18:16 other. Uh and so the next er basically is third system one.

18:21 . And so light energy hits Then again, electrons are bumped up

18:27 off to another series of electronic carriers time any of mm hmm to N

18:34 D P. And so generally you've in a D N A D

18:39 So the N A D P and D P H uh couple any D

18:45 are generally seen in bio synthetic Okay, because in a D P

18:51 and 80 P are both of you to fix co two making these more

18:57 organic molecules, sugars and things. , um so again, just to

19:05 here, so electron flow is this Okay? Water to make any

19:12 Okay. And then of course here are making https as well. So

19:20 have our two energy molecules N. . D. P. H.

19:28 formed. Alright, these two So again, because ceo to fixation

19:35 a lot of energy. Right? have to continue to be forming this

19:39 deform your organic materials. But the , plants or allergy or santa bacteria

19:45 for their processes. Okay, um we can see the same thing basically

19:52 in this next slide. Uh and you don't need to memorize these these

19:58 of these components like cytochrome B. . Or or plaster, sand and

20:03 worry about that. Okay, I'm kind of showing you how it would

20:07 in the membrane of the organism. , we have our forces to

20:12 A couple of two proton pumping as absorbed. The full tosses reaction

20:20 There is the presence of oxygen forming another proton pump here and then the

20:28 of a teepee. Okay, by that time, by osmosis

20:32 And then here is for the system I'm sorry, one, excuse me

20:37 , one light absorption electrons pandit off to N. A. D.

20:43 . For DPH. So energy Okay, so for each oxygen formed

20:52 results from the oxidation of two two moles of water, the production

20:57 2 83 80 PS. Okay. So that's the oxygen in the

21:05 Okay, so two photo systems. , because what we're going to see

21:11 the next two systems is among bacterial that photosynthesize on. Unlike this

21:18 they either have Photo System one or , not both together. And that's

21:23 the difference between between the three This has two photo systems. The

21:28 ones either have one or the Okay. Um Other things here,

21:37 water is oxidized. Okay, oxygen . Right? So oxygen is not

21:42 or reduced. Its just by product the oxidation of water. Um SOO

21:50 does get reduced reduced to form these complex organic molecules. Um Many

22:00 Okay, I think you've probably seen number of times already. So let's

22:05 at um These other two. So last two photo systems are variations.

22:12 this group agreed sulfur types have just system one. Okay, so that's

22:17 system that's linked to N. D. P. H.

22:21 Okay? Um And so it absorbs . That's kind of low energy,

22:27 ? Compared to the previous system 6 . Alright. 700. And this

22:33 is 8 40. So considerably less But it does have a full tosses

22:41 . And so typically it's uh two s. Hence we typically college

22:47 sulfur for that reason it oxidizes H S. But it can also there's

22:52 that can use hydrogen gas or iron iron as a source even even succeeded

22:59 some cases. So um but has only a PS one system attract

23:06 in a DPH production and some for strange reason A. D.

23:10 Okay. So there is some variation . Um So the process we see

23:17 , so this is an example. some of your green sulfur types collect

23:22 chlor fields, bacterial flora fields in complexes called chlor zones. Okay,

23:28 these aren't organelles. Uh It's not not a lipid violators. Or when

23:32 see some lipid molecules are not arranged a typical bilateral like memory, but

23:39 does uh collect these chloroform molecules in dense packet here, so to speak

23:47 photons of light energy absorbed. And passed that onto these um the photo

23:53 . Okay. And so the oxidation hydrogen sulfide in this case.

24:00 It gets oxidized electrons passed down eventually N. A. D.

24:04 Or any de deformity DPH fingers on Fix you to these are photo water

24:11 . They do Fix Co two. the question is how can they make

24:15 teepee? Well of course they can a teepee but it's just through a

24:22 pump so they can generate protons From oxidation of H. two s.

24:27 example here. Okay and those can and form a gradient. Okay.

24:34 they'll have an A. T. . A. For which they can

24:37 and produce a piece. It's just a system that's part of the PS

24:42 system. Right? It's independent of . So they have PS one to

24:45 an A. D. H. they can't agree. Ready Informa Https

24:51 the same mechanism is just not associated the PS two system. Okay.

24:55 but again they are they are photo troughs. They do Fix Co

25:00 Okay. Um in the last system is one that has just PS two

25:08 PS one. Okay. And so these are really low energy. So

25:14 see the 870s and we like the and floor. That's really infrared

25:19 Right? And so that's a really low energy. Such that it's not

25:27 really to have a full toxic reactions with it. Okay. So what's

25:33 it then? In terms of Well, it's a secret system.

25:39 So electrons that it possesses here when is absorbed, those electrons are passed

25:44 to the to the components of the but then are recycled back.

25:49 And again it's really because of the energy of light they absorb.

25:54 But because it's like the PS Okay, it will uh form the

26:02 proton gradient will be able to form tps. Alright so it's a way

26:05 it to suddenly form get energy but but this group unlike the previous

26:12 these guys are photo hetero tropes. so they are photo heterosexuals. Uh

26:20 hiding here. Okay, so uh they it's a way for them to

26:26 supplement their metabolism and get energy using . But they do cantab allies.

26:30 they have to have a more complex carbon sources. Okay, um this

26:37 in general, these purple non sulfur are very versatile. They can be

26:45 this guy using life plus metabolize. There's something that can act like a

26:51 little trophy as well. So that of can span almost three types of

26:54 in one certain species can so it them very versatile. He's typically typically

27:01 in aquatic sediments um easily. But but again, the cyclic little electrons

27:12 . Okay. Uh so if we kind of summarize all three of these

27:17 one shot and look at it this . Okay, so here's the first

27:23 of debt oxygen in photosynthesis. Okay , allergy plants, standard bacteria.

27:31 , so two photo systems. my absorption into the first, the

27:36 system too, that's linked to a formation. Photo phosphor relation Photo System

27:43 absorbs light electrons then transfer to form DPH. And so again these are

27:49 of trucks. Okay, uh then have bacterial degree in sulfur types only

27:57 the system. One alright, link any DPH formation and oxygen IQ.

28:02 , so there's no oxygen formed as byproduct here. They're using H two

28:06 . There's no auction being formed. . Hence and pathogenic. Uh these

28:11 are photo autotrophs. They do produce T. P. S. Of

28:15 but just not. It's just not to a photo system to process.

28:20 last group we just looked at has photo system two. Okay. They

28:26 not um they're not they're not going fix fixing. Which is why it

28:33 the screen. Okay so again linked photos too proton pump ADP for

28:40 And again an oxygen. There's no being formed here. Okay so you're

28:45 three types. Okay um many questions . Okay so let's summarize all this

28:55 the question here at the end. so uh let's take a look at

29:01 . Which is the following statements. is true concerning photo trophy among hello

29:08 and cyanobacteria, green sulfur bacteria and non sulfur bacteria. So look at

29:15 options there and see what makes Mm hmm mm hmm. Mhm mm

30:30 . 10 seconds. Okay. Just reminder. All the all the three

30:39 you need is up everything you need exam three and they're not thinking about

30:43 now but that that's all available to . Mhm mm hmm. Okay so

30:59 the halo archaea. So bacterial chlorophyll photo tropes to absorb green light.

31:04 that true or false false? Because not chlorophyll based. Right? It's

31:13 or adoption based. Okay. Center are that's wrong because they are their

31:21 it right. C is not right chlorophyll based. Right. Not bacteria

31:30 often sort of image. There's a and non chlorophyll based have actually I

31:35 together before class A a table and course uh it'll be available on

31:42 Uh So you might you might find helpful. So the correct answer here

31:46 D right green sulfur bacteria. Photo possessing photo system one linked to any

31:52 in some cases and A. H. Depending on the strain

31:56 So here is the table. Um . Okay sorry for the small

32:05 Uh But again just to through kind I made about a couple things out

32:10 to put the many things the trophy . Non forkful baseball for bass.

32:16 photo pigments you find in each Okay. Light absorption through retinal

32:23 Two photo systems here here but they're these two groups right there together in

32:29 groups. Features like the pump. are photo header. Tropes absorbing

32:36 These are the kind of representative Ah And so again uh you might

32:42 helpful. It'll just look on the blackboard under the electric notes for unit

32:48 and it'll be sitting there. Okay think those most of the main features

32:54 know. Um A questions. Yeah all folks. So go to lab

33:05 wait for lab or if you don't to go to lab you can go

33:09 . It will be yes. Um I guess uh individuals were just remember

33:25 the complex we have to remember, visually what it looks like the which

33:32 like, you know, just if just have a general idea, a

33:38 of, Okay, here's just the of electrons, how the electrons flow

33:43 the system. So PS two of PS two PS one like that.

33:48 don't even know memorized structures and things that. Or even like the it

33:55 like different electron carriers, like pasto for yourself. You don't need don't

34:00 to memorize that. It's kind of basics. Yeah. Yeah.

34:13 Start using three on Wednesday, Okay. Mm hmm.

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