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1 gold standard because the liver is the major storage organ.
2 te metabolism, consistent with its role as a storage organ.
3 h of new vegetative tissues, seeds, or other storage organs.
4 ng to the normal localization of SP to sperm-storage organs.
5 e lumen of the uterus and the female's sperm storage organs.
6 sperm and Acp36DE to a limited area near the storage organs.
7 e female, and in only one of her three sperm-storage organs.
8 vegetables, and plants producing underground storage organs.
9 utant sperm failed to enter the female sperm storage organs, a prerequisite for fertilization.
10 s shown they have evolved two separate sperm storage organs, allowing them to make post-copulatory pa
11 esulting in marked reduction of sperm in the storage organs and decreased fecundity, whereas enhancem
12 ly in vacuolar membranes of cotyledons (seed storage organs) and is synthesized during seed maturatio
13             Rare mutant sperm that reach the storage organs are able to fertilize the egg and produce
14  different males are not 'stratified' in the storage organs but mix freely.
15                             As an absorptive storage organ, endosperm plays an essential role in supp
16 e, stems elongate at the expense of leaf and storage organ expansion, branching is inhibited, and flo
17  needed for the accumulation of sperm in the storage organs, fail to complete the full sequence of th
18 this role, Acp29AB localizes to female sperm storage organs following mating, although it does not ap
19 e once considered the adipocyte as a passive storage organ for efficient storage of long-term energy
20  photosynthetic tissues and within dedicated storage organs has been characterized extensively in man
21  carbohydrate reserves in the seed, the main storage organ in seedlings.
22 d manipulation of carbon partitioning within storage organs in favour of starch synthesis, and attemp
23 t sperm are motile but fail to swim into the storage organs in the female.
24 n heterotrophic tissues other than dedicated storage organs is poorly characterized, and its function
25 uberosum) which is grown for its underground storage organ known as a tuber.
26 d for divergent sperm length or female sperm-storage organ length, we experimentally show that male f
27 ing interval, progeny production rate, sperm-storage organ morphology, and a number of sperm performa
28  in the fat body, the major immune and lipid storage organ of the fruit fly, Drosophila melanogaster,
29                        The liver is the main storage organ of vitamin A, but activation of the retino
30 growth, occurring at the expense of leaf and storage organ production.
31 co modeling predicted that, in the two grain storage organs (the endosperm and embryo), the light-ind
32     The length of the female's primary sperm-storage organ, the seminal receptacle, has undergone rap
33 lives and must use sperm stored in the sperm storage organ, the spermatheca, to fertilize a lifetime'
34  importance of leaves, seeds, or underground storage organs to the diet of this primate.
35  the fate of sperm inside the female's sperm storage organs, to quantify sperm competition, and to as
36 A and TA perturbed sperm depletion from both storage organ types.
37 has been hypothesized that plant underground storage organs (USOs) played key roles in the initial ho
38 acy in humans consuming meat and underground storage organs (USOs).
39 ption that circulating factors released from storage organs were able to signal bodily energy reserve

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